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RosBREED: bridging the chasm between discovery and application to enable DNA-informed breeding in rosaceous crops

The Rosaceae crop family (including almond, apple, apricot, blackberry, peach, pear, plum, raspberry, rose, strawberry, sweet cherry, and sour cherry) provides vital contributions to human well-being and is economically significant across the U.S. In 2003, industry stakeholder initiatives prioritize...

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Autores principales: Iezzoni, Amy F., McFerson, Jim, Luby, James, Gasic, Ksenija, Whitaker, Vance, Bassil, Nahla, Yue, Chengyan, Gallardo, Karina, McCracken, Vicki, Coe, Michael, Hardner, Craig, Zurn, Jason D., Hokanson, Stan, van de Weg, Eric, Jung, Sook, Main, Dorrie, da Silva Linge, Cassia, Vanderzande, Stijn, Davis, Thomas M., Mahoney, Lise L., Finn, Chad, Peace, Cameron
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7603521/
https://www.ncbi.nlm.nih.gov/pubmed/33328430
http://dx.doi.org/10.1038/s41438-020-00398-7
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author Iezzoni, Amy F.
McFerson, Jim
Luby, James
Gasic, Ksenija
Whitaker, Vance
Bassil, Nahla
Yue, Chengyan
Gallardo, Karina
McCracken, Vicki
Coe, Michael
Hardner, Craig
Zurn, Jason D.
Hokanson, Stan
van de Weg, Eric
Jung, Sook
Main, Dorrie
da Silva Linge, Cassia
Vanderzande, Stijn
Davis, Thomas M.
Mahoney, Lise L.
Finn, Chad
Peace, Cameron
author_facet Iezzoni, Amy F.
McFerson, Jim
Luby, James
Gasic, Ksenija
Whitaker, Vance
Bassil, Nahla
Yue, Chengyan
Gallardo, Karina
McCracken, Vicki
Coe, Michael
Hardner, Craig
Zurn, Jason D.
Hokanson, Stan
van de Weg, Eric
Jung, Sook
Main, Dorrie
da Silva Linge, Cassia
Vanderzande, Stijn
Davis, Thomas M.
Mahoney, Lise L.
Finn, Chad
Peace, Cameron
author_sort Iezzoni, Amy F.
collection PubMed
description The Rosaceae crop family (including almond, apple, apricot, blackberry, peach, pear, plum, raspberry, rose, strawberry, sweet cherry, and sour cherry) provides vital contributions to human well-being and is economically significant across the U.S. In 2003, industry stakeholder initiatives prioritized the utilization of genomics, genetics, and breeding to develop new cultivars exhibiting both disease resistance and superior horticultural quality. However, rosaceous crop breeders lacked certain knowledge and tools to fully implement DNA-informed breeding—a “chasm” existed between existing genomics and genetic information and the application of this knowledge in breeding. The RosBREED project (“Ros” signifying a Rosaceae genomics, genetics, and breeding community initiative, and “BREED”, indicating the core focus on breeding programs), addressed this challenge through a comprehensive and coordinated 10-year effort funded by the USDA-NIFA Specialty Crop Research Initiative. RosBREED was designed to enable the routine application of modern genomics and genetics technologies in U.S. rosaceous crop breeding programs, thereby enhancing their efficiency and effectiveness in delivering cultivars with producer-required disease resistances and market-essential horticultural quality. This review presents a synopsis of the approach, deliverables, and impacts of RosBREED, highlighting synergistic global collaborations and future needs. Enabling technologies and tools developed are described, including genome-wide scanning platforms and DNA diagnostic tests. Examples of DNA-informed breeding use by project participants are presented for all breeding stages, including pre-breeding for disease resistance, parental and seedling selection, and elite selection advancement. The chasm is now bridged, accelerating rosaceous crop genetic improvement.
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spelling pubmed-76035212020-11-02 RosBREED: bridging the chasm between discovery and application to enable DNA-informed breeding in rosaceous crops Iezzoni, Amy F. McFerson, Jim Luby, James Gasic, Ksenija Whitaker, Vance Bassil, Nahla Yue, Chengyan Gallardo, Karina McCracken, Vicki Coe, Michael Hardner, Craig Zurn, Jason D. Hokanson, Stan van de Weg, Eric Jung, Sook Main, Dorrie da Silva Linge, Cassia Vanderzande, Stijn Davis, Thomas M. Mahoney, Lise L. Finn, Chad Peace, Cameron Hortic Res Review Article The Rosaceae crop family (including almond, apple, apricot, blackberry, peach, pear, plum, raspberry, rose, strawberry, sweet cherry, and sour cherry) provides vital contributions to human well-being and is economically significant across the U.S. In 2003, industry stakeholder initiatives prioritized the utilization of genomics, genetics, and breeding to develop new cultivars exhibiting both disease resistance and superior horticultural quality. However, rosaceous crop breeders lacked certain knowledge and tools to fully implement DNA-informed breeding—a “chasm” existed between existing genomics and genetic information and the application of this knowledge in breeding. The RosBREED project (“Ros” signifying a Rosaceae genomics, genetics, and breeding community initiative, and “BREED”, indicating the core focus on breeding programs), addressed this challenge through a comprehensive and coordinated 10-year effort funded by the USDA-NIFA Specialty Crop Research Initiative. RosBREED was designed to enable the routine application of modern genomics and genetics technologies in U.S. rosaceous crop breeding programs, thereby enhancing their efficiency and effectiveness in delivering cultivars with producer-required disease resistances and market-essential horticultural quality. This review presents a synopsis of the approach, deliverables, and impacts of RosBREED, highlighting synergistic global collaborations and future needs. Enabling technologies and tools developed are described, including genome-wide scanning platforms and DNA diagnostic tests. Examples of DNA-informed breeding use by project participants are presented for all breeding stages, including pre-breeding for disease resistance, parental and seedling selection, and elite selection advancement. The chasm is now bridged, accelerating rosaceous crop genetic improvement. Nature Publishing Group UK 2020-11-01 /pmc/articles/PMC7603521/ /pubmed/33328430 http://dx.doi.org/10.1038/s41438-020-00398-7 Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Review Article
Iezzoni, Amy F.
McFerson, Jim
Luby, James
Gasic, Ksenija
Whitaker, Vance
Bassil, Nahla
Yue, Chengyan
Gallardo, Karina
McCracken, Vicki
Coe, Michael
Hardner, Craig
Zurn, Jason D.
Hokanson, Stan
van de Weg, Eric
Jung, Sook
Main, Dorrie
da Silva Linge, Cassia
Vanderzande, Stijn
Davis, Thomas M.
Mahoney, Lise L.
Finn, Chad
Peace, Cameron
RosBREED: bridging the chasm between discovery and application to enable DNA-informed breeding in rosaceous crops
title RosBREED: bridging the chasm between discovery and application to enable DNA-informed breeding in rosaceous crops
title_full RosBREED: bridging the chasm between discovery and application to enable DNA-informed breeding in rosaceous crops
title_fullStr RosBREED: bridging the chasm between discovery and application to enable DNA-informed breeding in rosaceous crops
title_full_unstemmed RosBREED: bridging the chasm between discovery and application to enable DNA-informed breeding in rosaceous crops
title_short RosBREED: bridging the chasm between discovery and application to enable DNA-informed breeding in rosaceous crops
title_sort rosbreed: bridging the chasm between discovery and application to enable dna-informed breeding in rosaceous crops
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7603521/
https://www.ncbi.nlm.nih.gov/pubmed/33328430
http://dx.doi.org/10.1038/s41438-020-00398-7
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